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Biomedical subjects

J R Batchelor

Publications and source records attributed to J R Batchelor.

At least 19 recordsLinked to original sources

Human T cells cannot act as autonomous antigen-presenting cells, but induce tolerance in antigen-specific and alloreactive responder cells.

The ability of two HLA-DR-expressing human T cell clones to function as antigen-presenting cells (APC) was investigated using highly purified T cells. The results demonstrated that these T cell clones are unable to act as autonomous APC, and that recognition of nominal or alloantigens on the surface of T cells leads to a state of nonresponsiveness. The first observation was that a T cell clone with specificity for the 306-324 peptide of influenza hemagglutinin (HA), and raised from a DR1 responder, exhibited apparent degeneracy of major histocompatibility complex restriction when cultured with peptide in the presence of peripheral blood mononuclear cells (PBMC) expressing a wide variety of structurally unrelated DR types. However, when the PBMC were pulsed with peptide and washed before coculture with the clone, peptide was exclusively recognized with DR1Dw1. This implied that in the presence of soluble peptide the T cells were displaying ligand to each other, and that the third-party APC were providing costimulatory signals. To test the ability of T cells to act as autonomous APC, accessory cell-free preparations of two DR1-restricted clones were cultured with peptide in the presence or the absence of added B cell APC. T cell purity was established by the absence of proliferation in response to the mitogen phytohemagglutinin (PHA). PHA-nonresponsive T cells were completely unable to proliferate in response to peptide alone; furthermore, preculture of the HA-specific clone, in the complete absence of accessory cells, with the same concentration of peptide (1 microgram/ml) that induced optimal proliferation when presented by conventional APC, led to profound nonresponsiveness. The same phenomenon was also observed when two of three anti-DR1 alloreactive T cell clones were precultured with a DR1-expressing T cell clone. The ability of the DR1-expressing clone to induce nonresponsiveness in anti-DR1 clones correlated with recognition of the DR1 alloantigen on the DR1-expressing clone.

Antigen-Presenting Cells

Co-expression of human T cell receptor chains with mouse CD3 on the cell surface of a mouse T cell hybridoma.

In this study we demonstrate that human T cell receptor (TcR) chains can be co-expressed with murine CD3 on the cell surface of a murine T cell hybridoma. Human TcR alpha and beta genes from the Jurkat leukaemic cell line were transfected into a TcR-negative mouse T cell hybridoma, TG40. The Jurkat TcR was successfully co-expressed at the cell surface with mouse CD3 components. Brightly staining transfectants were selected by fluorescence-activated cell sorting, and levels of expression comparable to a normal T cell line were achieved suggesting that the human TcR dimer assembled efficiently with the mouse CD3 complex. Northern blot analysis demonstrated similar levels of TcR messenger RNA to those found in the parental Jurkat line. Although we have not formally demonstrated surface expression of the Jurkat TcR alpha chain, the residual alpha gene transcript which is present in murine TG40 line is non-expressible. In order to test the signalling capacity of this human/mouse complex, the transfectants were stimulated with an anti-V beta 8 monoclonal antibody. This stimulus led to interleukin-2 production by the transfectants, demonstrating the delivery of a transmembrane signal. In addition, B10.A mice were immunised with the transfectants, and the antisera from these mice stained the transfectant and the Jurkat cell line, but not the parental T cell hybridoma. This interspecies transfection approach should now permit us to explore the requirements for T cell activation, the constraints on TcR alpha beta chain pairing, and creates ideal reagents for inducing a mouse anti-human TcR-specific response with a view to producing panels of anti-human TcR monoclonal antibodies.

Animals

Molecular mimicry by major histocompatibility complex molecules and peptides accounts for some alloresponses.

One explanation offered for the uniquely high precursor frequencies of T cells which recognize allogeneic major histocompatibility complex (MHC) molecules, and their lack of self-MHC restriction, is that the alloreactive cells are polyclonal populations the primary specificity of which is self-MHC plus peptide X1, X2, ... Xn. These are postulated to cross-react with allo-MHC plus peptides Y1, Y2, ... Yn. It has been further suggested that the structural basis for the crossreactivity between different MHC alleles is the similarity in amino acid sequence of that part of the molecule predicted to make contact with the T cell receptor (TcR). In order to test this concept, T cells were obtained with dual specificity for influenza haemagglutinin (HA), restricted by HLA-DR1Dw1, and for DR4Dw4/Dw14 expressed on allogeneic human B cell lines, and the specificity of one clone was studied in detail. The exposed, TcR-contacting surfaces of these two DR molecules are predicted to be identical. Although the HA-specific response was stimulated by DR1-expressing mouse DAP.3 transfectants, DAP.3 cells expressing the alloantigen DR4Dw4 were unable to stimulate, possibly because of a failure to present the necessary human peptide for anti-DR4 allorecognition. Therefore, the effects of pulsing the DR4Dw4-expressing DAP.3 cells with the HA peptide were examined. This peptide is known to bind to both DR1 and DR4. Addition of the HA peptide restored the anti-DR4Dw4 response. These data support the concept that allorecognition in some responder/stimulator combinations can be explained by cross-reactivity at the level of the MHC molecule and the peptide.

Amino Acid Sequence

Structural analysis of human anti-mouse H-2E xenorecognition: T cell receptor bias and impaired CD4 interaction contribute to weak xenoresponses.

T lymphocyte responses to the MHC of an evolutionarily distant species are known to be weak compared with responses against allogeneic MHC products within a species. This fact was used to examine the regions of human MHC class II molecules required for the stimulation of strong primary immune responses against MHC alloantigens. A panel of mouse DAP.3 transfectants expressing the products of wild-type and recombinant DR1/H-2Ek MHC class II genes paired to either DR alpha or H-2E alpha genes was generated, and tested as stimulator cells for purified human T cells. A strong proliferative response to DAP.3 transfectants expressing allogeneic HLA-DR molecules was seen. In contrast, weak or absent responses were recorded against DAP.3 cells expressing H-2E molecules. Substitution of the DR1 beta chain with H-2E beta k led to a dramatic loss of recognition; alpha chain substitution had a less marked effect. Furthermore, replacement of the beta 2 domain of DR1 with H-2E sequence caused 90% inhibition, whereas introduction of the beta 2 domain of DR1 into H-2Ek led to a 10-fold increase in T cell response. These results are most readily explained if the beta 2 domain contributes to the interaction site for the CD4 molecule. Substitution of either half of the beta 1 domain led to a marked loss of response. This was more impressive following substitution of the TCR-contacting alpha-helical region of the domain.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Evidence that umbilical cord blood contains a higher frequency of HLA class II-specific alloreactive T cells than adult peripheral blood. A limiting dilution analysis.

Umbilical cord blood has been used to effect hematological reconstitution and there are sufficient stem cells available in the cord blood obtainable from a single placenta to reconstitute an adult patient. Umbilical cord blood might therefore, have widespread potential use in the field of bone marrow transplantation. We compared alloreactivity of paired samples of adult and cord peripheral blood mononuclear cells, by measuring frequencies of both alloreactive T helper cells and cytotoxic T cell precursors (CTLp), using limiting dilution analysis. In addition we compared the phenotype of adult and neonatal PBMC, using monoclonal antibody staining. Cord PBMC in general showed higher frequencies of alloreactive Th than adult PBMC, with statistically significant differences in 6 out of 10 experiments. There was no statistically significant difference between adult and cord CTLp frequencies. Adult and cord PBMC surface phenotype was similar, except that cord blood contained fewer lymphocyte function-associated-3 (LFA-3) positive (memory) cells.

Adult

Lymphocytes from multi-transfused patients exhibit cytotoxicity against autologous cells.

We previously demonstrated that multitransfused patients with severe aplastic anaemia (SAA) exhibit high numbers of alloreactive cytotoxic T lymphocyte precursors directed against their HLA identical siblings. In this study a group of patients who had received multiple blood transfusions for SAA, other haematological diseases or acute blood loss were tested for autocytotoxicity and the results compared with those of untransfused controls. These controls consisted of normal individuals, patients with chronic myeloid leukaemia (CML) or untransfused patients with SAA. There was a significantly higher degree of autocytotoxicity in multitransfused patients, than in the untransfused controls, including untransfused patients with SAA (P = 0.0001). These results suggest that blood transfusion is responsible for inducing autoreactivity. In one patient, in whom both alloreactive anti-non-MHC and autoreactive cytotoxic T lymphocytes (CTL) had been detected, it was demonstrated that there was no crossreactivity between the alloreactive and autoreactive CTL responses. Inhibition studies using monoclonal antibodies revealed the effector cells to be T lymphocytes and the restricting determinants to be both HLA class I and II molecules.

Anemia, Aplastic

Structural analysis of anti-DR1 allorecognition by using DR1/H-2Ek hybrid molecules. Influence of the beta 2-domain correlates with CD4 dependence.

A segmental analysis of the key regions of HLA-DR1 that control T cell allorecognition was performed by using a series of transfected cell lines expressing the products of recombinant DRB/H-2Eb genes, paired with either DR alpha or H-2E alpha. Four of eight human T cell clones tolerated substitution of the H-2E alpha chain, but only one clone showed any response to the DR alpha/H-2E beta k dimer. Both the membrane-proximal and the membrane-distal domains of the beta-chain played an important part in stimulating these clones. The response of four of eight clones was markedly inhibited by substitution of the H-2E beta 2 for the DR beta 2 domain. This inhibition showed a complete correlation with the sensitivity of the clones to inhibition by anti-CD4 mAb. Taken together, these results suggest that the interaction site for CD4 may include residues on the beta 2-domain. Introduction of H-2Ek sequence into either half of the beta 1-domain led to a complete loss of response by all but two of the clones. This is consistent with these clones having dual specificity for exposed DR1-specific polymorphisms and for DR1-bound peptides. The pattern of response of one of the clones suggested that indirect conformational effects on the alpha 1-domain may also contribute to the influence of the amino-terminal half of the beta 1-domain on T cell recognition. In the presence of H-2E alpha, this clone responded more strongly when the amino-terminal half of the beta 1-domain was of H-2Ek rather than DR1 sequence. This implies that species matching of the floor of the beta 1-domain with the alpha-chain is more important than the presence of the alpha-chain of the parental species.

Amino Acid Sequence

A monoclonal antibody with broad anti-HLA-DR activity fails to bind to DRw11/Dw5: possible effect of a unique polymorphism on the beta 1 domain alpha-helix.

We describe the generation and characterization of a murine monoclonal antibody with broad anti-HLA-DR beta activity, but which does not recognize DRw11/Dw5. A BALB/c mouse was immunized with a human alloreactive T-cell clone, with the intention of generating monoclonal anti-T-cell-receptor antibodies. In the course of screening the resulting hybridomas, a clone was detected which secreted an antibody (MP2) with anti-HLA-DR activity. This was shown by flow cytometry as well as immunoprecipitation followed by gel electrophoresis. Flow cytometry experiments using transfectants bearing hybrid human/murine class II molecules demonstrated that MP2 binds to the DR beta chain. MP2 bound to a wide range of Epstein-Barr-Virus-transformed cell lines and transfectants expressing different DR beta 1 and DR beta 3 subtypes: the only exceptions were three transfectants expressing DRw11/Dw5. One of these (RGT1) was shown to be functionally normal in DRw11-restricted alloreactive and antigen-specific systems. The specificity of MP2 was confirmed in functional assays: it was able to inhibit the recognition of DR1 and DRw15 but not DRw11 by alloreactive T-cell clones. Previously reported sequence data show that the beta chain of DRw11 differs from all other DR and DQ beta chains at position 58 by a glutamic acid for alanine substitution. This may account for the inability of DRw11/Dw5 to be recognized by MP2. The data emphasize the value of transfectants in defining precisely the allelic and chain specificity of anti-major-histocompatibility-complex (MHC) antibodies, and illustrate the influence that inaccessible residues can have on the conformation of MHC molecules.

Antibodies, Monoclonal

Multiple sclerosis and HLA: is the susceptibility gene really HLA-DR or -DQ?

Seventy-one patients with multiple sclerosis (MS) were classified into four subgroups according to the clinical pattern of their disease; their HLA-DR and DQ polymorphisms were defined by serological methods and analysis of Taq1 digestion fragments hybridizing with DRB, DQA, and DQB cDNA probes. The frequencies of the polymorphisms in the patients were compared with those of 100 control subjects. The frequencies of a 3.25-kb fragment from Mspl digests of genomic DNA which hybridized to DQA were also defined in the same groups of patients and control subjects. HLA-DR2 (DRw 15 subtype) and the associated HLA-DQw6 were observed in significant excess in the patients compared with the normal subjects (63% vs. 32% for DRw15; 65% vs. 42% for DQw6). There were no significant differences in the distribution of the DR or DQ alleles between the groups of patients showing different clinical patterns of disease, nor was there an excess in the patients of DQw8 and DQw9 which share hypervariable region sequences of the DQB chain in common with DQw6. The results argue against two recently proposed hypotheses of MS. First, they are not consistent with the proposal that susceptibility to MS is associated with expression of a hypervariable region of DQB shared by DQw6, 8, and 9. Second, they do not support the concept that primarily chronic progressive and relapsing/remitting MS are two immunogenetically distinct disease entities. Our evidence is consistent with the hypothesis that one of the true disease susceptibility genes for MS lies elsewhere within the HLA region and in Northern European populations is found in significant association with DRw15 and DQw6.

Adult

The specificity of alloreactive T cells is determined by MHC polymorphisms which contact the T cell receptor and which influence peptide binding.

The separate contributions to allorecognition of peptide-binding and T cell receptor-contacting residues of an allogeneic HLA-DR molecule were investigated by site-directed mutagenesis. Alloreactive T cell clones were generated from a combination of responder (DR1Dw1,DR4Dw14) and stimulator (DR1Dw1, DR4Dw10) whose DR products differed at only three amino acid positions, two of which are predicted to interact with the T cell receptor (67 and 70), and one with bound peptide (71). Transfected murine DAP.3 cells expressing the wild type and mutated forms of DR4Dw10 in which the codons for residues 70 and/or 71 had been altered towards DR4Dw14 were used to stimulate a panel of anti-DR4Dw10 T cell clones. Substitutions at either position 70 or 71, or the combination of the two, led to loss of recognition by the alloreactive T cell clones. This implies that residues involved in peptide binding and residues involved in interaction with the T cell receptor are important for this panel of alloreactive T cell clones. The specificity of these alloreactive T cells for exposed polymorphic residues on the allogeneic MHC molecule was further demonstrated by the inhibitory effects of synthetic peptides, derived from the alpha-helix of the beta 1 domain of the DR4Dw10 molecule.

Animals

Cytotoxic T lymphocyte precursor (CTL-p) frequency analysis in unrelated donor bone marrow transplantation: two case studies.

HLA 'matched' unrelated donor bone marrow transplantation (BMT) is associated with an increased incidence and severity of acute graft-versus-host disease (GVHD) in comparison with HLA-identical sibling transplants. Using a limiting dilution analysis system for quantitating frequencies of alloreactive cytotoxic T lymphocyte precursors (CTL-p), we previously demonstrated a correlation between CTL-p frequency and HLA disparity between responder and stimulator, and between CTL-p frequency and the incidence of acute GVHD following HLA A, B, DR matched unrelated donor BMT. In this study we assayed CTL-p frequencies in two HLA 'matched' unrelated donor/patient pairs, with single HLA antigenic mismatches detected by allogenotyping or isoelectric focusing but not by HLA serology, and demonstrated that the CTL-ps were specifically directed at the mismatched antigen. Both class I and class II antigens were detected. These data, and our previous work, suggest that high CTL-p frequencies in HLA 'matched' unrelated pairs are indicative of HLA antigenic variants undetected by serology but recognized by molecular typing, and that these are responsible for the value of the assay in predicting acute GVHD after BMT. We propose that this assay system be used in aiding final donor selection before unrelated or mismatched related donor BMT.

Bone Marrow

Individual variation in the frequency of HLA class II-specific cytotoxic T lymphocyte precursors.

The frequencies of HLA class II-specific cytotoxic T lymphocyte precursors (CTLp) were studied in number of unrelated individuals using a limiting dilution analysis system optimized for the detection of CD4+ CTLp. Peripheral blood mononuclear cells (PBMC) were enriched for CD4+ T cells by immunomagnetic depletion of CD8+ T cells. In some allogeneic combinations high CTLp frequencies were obtained with no significant difference between PBMC and CD4-enriched PBMC populations. In other combinations CTLp frequencies in CD4-enriched PBMC were found to be at least twentyfold lower than in the starting, unfractionated PBMC, suggesting a predominance in these pairs of CD8+ CTLp. In addition there was variation in CTLp frequencies against the same set of HLA class II gene products between individuals, and variation in CTLp frequencies against different HLA class II gene products within individuals. The HLA class II specificity of the assay system was demonstrated unequivocally with detection of CTLp against HLA-DR1 expressed on a murine L cell transfectant.

Animals

The molecular basis of alloreactivity.

The strength of the immune response to foreign histocompatibility molecules has long puzzled immunologists. In this article Robert Lechler and colleagues propose that (1) allorecognition is structurally heterogeneous and varies according to the responder and stimulator MHC types, (2) in closely related combinations the focus of the alloreactive T cell may be on epitopes of endogenous peptides that are displayed by stimulator but not by responder MHC molecules, seen in a 'self-restricted' manner, and (3) in more disparate combinations the alloresponse may be directed primarily against residues on the allogeneic MHC molecule itself.

Amino Acid Sequence